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Peptide aptamer-modified single-walled carbon nanotube-based transistors for high-performance biosensors

机译:用于高性能生物传感器的基于肽适体改性的基于围绕的单壁碳纳米管晶体管

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Biosensors employing single-walled carbon nanotube field-effect transistors (SWCNT FETs) offer ultimate sensitivity. However, besides the sensitivity, a high selectivity is critically important to distinguish the true signal from interference signals in a non-controlled environment. This work presents the first demonstration of the successful integration of a novel peptide aptamer with a liquid-gated SWCNT FET to achieve highly sensitive and specific detection of Cathepsin E (CatE), a useful prognostic biomarker for cancer diagnosis. Novel peptide aptamers that specifically recognize CatE are engineered by systemic in vitro evolution. The SWCNTs were firstly grown using the thermal chemical vapor deposition (CVD) method and then were employed as a channel to fabricate a SWCNT FET device. Next, the SWCNTs were functionalized by noncovalent immobilization of the peptide aptamer using 1-pyrenebutanoic acid succinimidyl ester (PBASE) linker. The resulting FET sensors exhibited a high selectivity (no response to bovine serum albumin and cathepsin K) and label-free detection of CatE at unprecedentedly low concentrations in both phosphate-buffered saline (2.3 pM) and human serum (0.23?nM). Our results highlight the use of peptide aptamer-modified SWCNT FET sensors as a promising platform for near-patient testing and point-of-care testing applications.
机译:采用单壁碳纳米管场效应晶体管(SWCNT FET)的生物传感器提供最终的灵敏度。然而,除了灵敏度之外,高选择性是批判性重要的,以将真实信号与非受控环境中的干扰信号区分开。这项工作介绍了新型肽适体与液门的SWCNT FET成功整合的第一次演示,以实现高度敏感和特异性检测的组织蛋白酶E(Cate),是癌症诊断的有用预后生物标志物。专门认识到伴配的新型肽适体通过全身体外进化来设计。首先使用热化学气相沉积(CVD)方法生长SWCNT,然后用作制造SWCNT FET器件的通道。接下来,通过使用1-芘丁丁酸琥珀酰亚胺(PBASE)接头,通过非共价固定化肽适体的非共价固定来官能化SWCNT。所得到的FET传感器表现出高选择性(对牛血清白蛋白和组织蛋白蛋白酸的反应没有反应,并且在磷酸盐缓冲盐水(2.3μm)和人血清中以前所未有的低浓度(0.23Ω·Nm),在前所未有的低浓度下无标记检测。我们的结果突出了使用肽Aptamer改性的SWCNT FET传感器作为近乎患者测试和护理点测试应用的有希望的平台。

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